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Nonequilibrium thermodynamics of the Markovian Mpemba effect and its inverse

机译:马尔可夫姆彭巴效应的非平衡热力学及其逆

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摘要

Under certain conditions, it takes a shorter time to cool a hot system than to cool the same system initiated at a lower temperature. This phenomenon—the “Mpemba effect”—was first observed in water and has recently been reported in other systems. Whereas several detail-dependent explanations were suggested for some of these observations, no common underlying mechanism is known. Using the theoretical framework of nonequilibrium thermodynamics, we present a widely applicable mechanism for a similar effect, the Markovian Mpemba effect, derive a sufficient condition for its appearance, and demonstrate it explicitly in three paradigmatic systems: the Ising model, diffusion dynamics, and a three-state system. In addition, we predict an inverse Markovian Mpemba effect in heating: Under proper conditions, a cold system can heat up faster than the same system initiated at a higher temperature. We numerically demonstrate that this inverse effect is expected in a 1D antiferromagnet nearest-neighbors interacting Ising chain in the presence of an external magnetic field. Our results shed light on the mechanism behind anomalous heating and cooling and suggest that it should be possible to observe these in a variety of systems.
机译:在某些条件下,冷却热系统所需的时间比冷却以较低温度启动的相同系统所需的时间短。这种现象-“姆彭巴效应”-首先在水中发现,最近在其他系统中也有报道。尽管针对这些观察中的一些提出了一些依赖细节的解释,但尚无共同的潜在机制。使用非平衡热力学的理论框架,我们提出了一种适用于类似效应的广泛应用的机制,即马尔可夫姆彭巴效应,为其出现提供了充分的条件,并在以下三个范式系统中进行了清晰证明:伊辛模型,扩散动力学和热力学。三态系统。此外,我们预测了加热过程中的逆马尔可夫Mpemba效应:在适当的条件下,冷系统的加热速度比在高温下启动的相同系统快。我们用数值方法证明,在存在外部磁场的情况下,一维反铁磁体最近邻居相互作用的Ising链中会出现这种反作用。我们的结果揭示了异常加热和冷却的背后机制,并建议应该有可能在各种系统中进行观察。

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